Yes, because the longer cannon have more energy.
A cannonball can travel at speeds ranging from 400 to 1,800 feet per second, depending on the type of cannon and the amount of gunpowder used. The actual speed will also depend on factors such as the weight and size of the cannonball.
The speed of a cannonball would vary based on factors such as the type of cannon, the amount of gunpowder used, and the angle of elevation. Generally, a cannonball could travel at speeds between 500-1500 feet per second.
Balls tend to travel farther outside than inside because outdoor environments generally provide less air resistance and more open space for the ball to travel uninterrupted. Additionally, factors like wind direction and speed can affect the distance a ball travels, with outdoor conditions often being more favorable for longer distances.
Respiratory droplets can travel up to around 6 feet when coughed or sneezed by an infected person. However, smaller droplets may remain suspended in the air for longer periods and travel farther under certain conditions.
Low-frequency sounds can travel the furthest distances because they have longer wavelengths that allow them to propagate farther with less attenuation. High-frequency sounds, on the other hand, have shorter wavelengths and are absorbed more quickly by the surrounding medium, limiting how far they can travel.
The moon has no atmosphere and has less gravity than the earth. That means that a cannonball fired on the moon will travel further.
A cannonball can travel at speeds ranging from 400 to 1,800 feet per second, depending on the type of cannon and the amount of gunpowder used. The actual speed will also depend on factors such as the weight and size of the cannonball.
The speed of a cannonball would vary based on factors such as the type of cannon, the amount of gunpowder used, and the angle of elevation. Generally, a cannonball could travel at speeds between 500-1500 feet per second.
Shorter restriction fragments travel farther in gel electrophoresis because they can move through the gel more easily due to their smaller size. Longer fragments experience more resistance and tend to travel a shorter distance through the gel.
The distance a cannonball can fly depends on several factors, including the angle of elevation, the amount of gunpowder used, and the cannon's design. Typically, a cannonball could travel anywhere from a few hundred yards to over a mile. For example, with optimal conditions and a high angle, some cannons could achieve ranges of up to 2,000 yards or more. However, the effective range for accuracy and impact is generally much shorter.
Some planets take longer to orbit the sun because they are farther away giving them a longer path to travel.
Gases have the least amount of molecules and they are spread farther apart so it takes a longer time for the sound energy to travel from molecule to molecule.
Mars takes longer to orbit the sun than Mercury because it is farther away from the sun and orbits at a greater distance. This means Mars has a longer path to travel around the sun, resulting in a longer orbital period. Mercury, being closer to the sun, has a shorter path to travel and completes its orbit more quickly.
Planets farther from the sun have larger orbits, which means they have to travel a greater distance to complete one revolution around the sun. This larger distance results in a longer orbital period compared to planets closer to the sun. It follows Kepler's third law of planetary motion, which states that the square of a planet's orbital period is proportional to the cube of its average distance from the sun.
The range of a projectile is given by R=(v2/g)Sin(2Theta) so for an angle of 30 and an initial speed of 100 m/s: R=(1002/9.8)Sin(60)=(10000/9.8)(sqr3/2)= 883.7 m ^^know-it-all! :@ ^^^^^^^^^;)
In "Secret of Mana," the Cannon Travel Center in Kakkara is located near the entrance of the town. You'll find it to the right as you enter Kakkara. The center allows you to travel to other locations in the game using the cannon system. Make sure to interact with the attendant to access the travel services.
People could travel farther and more frequently. Also, rail travel was safer